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TCHR CORE PLUS series
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Magnification
0.053 - 0.117 x
Compact

Key advantages

  • Make your large FOV system up to 45% smaller
    TCHR CORE PLUS lenses are up to 45% shorter than other telecentric lenses on the market. The short working distance minimizes the size of the whole system.
  • Designed for the latest camera sensors
    TCCP3MHRxxx-C lenses are designed for sensors up to 1.1” like the IMX304, while TCCP5MHRxxx-F lenses are ideal for sensors up to 4/3” like the IMX387
  • Smart integration
    TCHR CORE PLUS lenses integrate a mounting flange for easy integration without additional clamps.
  • System compactness is a competitive advantage
    TCHR CORE PLUS lenses minimize the size of your system, resulting in less manufacturing, shipping and storage costs.

TCHR CORE PLUS lenses feature standard extruded aluminum profiles with M5 T-slot nuts for easy mounting. No additional mounting clamps are required, making their integration easy and cost-effective.

TCHR CORE PLUS telecentric lenses take less space in your system, resulting in lower manufacturing, shipping and storage costs. A smaller vision system or measurement machine is the preferred solution in the industry and leads to more sales.

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Advantages

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• Lower manufacturing cost due to less material employed
• Cost of mounting is reduced as no additional clamps are needed
• Less space required for storage and use
• Lower shipment expenses due to smaller size
• Lower transportation risks

Sell more

• Compactness brings a competitive advantage

Microplates measurement
Microplates measurement

Advantages

Save more

• Lower manufacturing cost due to less material employed
• Cost of mounting is reduced as no additional clamps are needed
• Less space required for storage and use
• Lower shipment expenses due to smaller size
• Lower transportation risks

Sell more

• Compactness brings a competitive advantage

Main optical specifications Object field of view Advanced optical specifications Mechanical specifications
Part
number
Magnification Image
shape
dimension
Max
sensor
size
1/1.2″ 1.1″ 4/3″ Working
distance
Working
ƒ/N
Telecentricity
typical
(max)
Distortion
typical
(max)
Residual
distortion
Field
depth
Mount Phase
adjustment
Dimension
A
Dimension
B
Dimension
C
11.35 x 7.13 14.16 x 10.37 18.93 x 10.61
(x) (mm x mm) (mm × mm) (mm × mm) (mm × mm) (mm) (deg) (%) (%) (mm) (mm) (mm) (mm)
1 2 3 4 5 6 7 9 10 11
TCCP3MHR144-C 0.086 14.90 x 10.90 1.1″ 132.28 x 83.10 165.03 x 120.86 - 232.0 11 < 0.06 (0.10) < 0.8 < 0.01 77.3 C Yes 332 303 340
Quote
TCCP3MHR192-C 0.064 14.90 x 10.90 1.1″ 177.07 x 111.23 200.00 x 161.78 - 288.0 10 < 0.12 (0.18) < 0.8 < 0.01 125.9 C Yes 410 344 371
Quote
TCCP3MHR260-C 0.053 14.90 x 10.90 1.1″ 214.15 x 134.53 267.17 x 195.66 - 366.0 10 < 0.18 (0.22) < 0.9 < 0.01 184.2 C Yes 480 397 444
Quote
TCCP5MHR144-F 0.117 19.82 x 14.88 4/3″ 96.96 x 60.91 120.96 x 88.59 161.71 x 90.64 217.0 14 < 0.06 (0.10) < 0.8 < 0.01 52.9 C Yes 332 303 348
Quote
TCCP5MHR192-F 0.088 19.82 x 14.88 4/3″ 129.71 x 81.49 161.83 x 118.51 200.00 x 121.26 288.0 12 < 0.12 (0.18) < 0.8 < 0.01 81.1 C Yes 410 344 373
Quote
TCCP5MHR260-F 0.072 19.82 x 14.88 4/3″ 157.64 x 99.03 196.67 x 144.03 262.92 x 147.36 346.0 12 < 0.18 (0.22) < 0.9 < 0.01 119.8 C Yes 480 397 441
Quote

Last update 23 Jun 2022

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Notes

  1. Given the squared shape of the front window, the lens forms a rectangular image (Tech Info for related drawing).
  2. Working distance: distance between the front end of the mechanics and the object. Set this distance within ± 5% of the nominal value for maximum resolution and minimum distortion.
  3. Working f-number (wf/N): the real f-number of a lens in operating conditions.
  4. Maximum angle between chief rays and optical axis on the object side. Typical (average production) values and maximum (guaranteed) values are listed.
  5. Percent deviation of the real image compared to an ideal, undistorted image: maximum (guaranteed) values of the uncorrected image are listed.
  6. Residual distortion after calibration with TCLIB Suite software library, using a PTCP calibrations pattern and a fully GenICam compliant camera. For setup information see related table.
  7. Object side, calculated with the Rayleigh criterion with λ= 520 nm
  8. At the borders of the field depth the image can be still used for measurement but, to get a very sharp image, only half of the nominal field depth should be considered. Pixel size used for calculation is 3.45 μm.
  9. Indicates the availability of an integrated camera phase adjustment feature.
  10. Maximum dimension of the clamping flange.
  11. Measured from the front end of the mechanics to the camera flange.

Technical documents

Product user guide
Back focal adjustment

Specifications

Recommended product setup

Recommended product setup

Recommended product setup
Recommended product setup

For best measurement accuracy, TC CORE PLUS telecentric lenses should be used with:

  • TCLIB Suite, an Opto Engineering® proprietary software library for distortion calibration and overall optimization of telecentric measurement setups
  • A fully GenICam compliant camera
  • A specifically designed PTCPxxxxx chessboard calibration pattern
Part numberCalibrations softwareCalibrations patternSetup cameraRecommended camerasRecommended sensores
TCCP3MHR144TCLIB SuitePTCP-S1-HR1-CRT-mvBF3-2124aGCOE-123-x-z-080-yy-C, RT-mvBF3-2124aG, RT-mvBF3-2124G, RT-mvBC-X1012b, RT-mvBC-XD1012bIMX253, IMX304
TCCP3MHR192TCLIB SuitePTCP-L1-HR1-CRT-mvBF3-2124aGCOE-123-x-z-080-yy-C, RT-mvBF3-2124aG, RT-mvBF3-2124G, RT-mvBC-X1012b, RT-mvBC-XD1012bIMX253, IMX304
TCCP5MHR144TCLIB SuitePTCP-S1-HR1-CCOE29USB3IR-FCOE-290-x-z-110-yy-A, COE29xxx, COE50xxx,COE71xxxKAI-29050,CMV50000,CHR70M
TCCP5MHR192TCLIB SuitePTCP-L1-HR1-CCOE29USB3IR-FCOE-290-x-z-110-yy-A, COE29xxx, COE50xxx,COE71xxxKAI-29050,CMV50000,CHR70M
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Press & marketing content

Metrology white paper